College of Agronomy, Sichuan Agricultural University, Chengdu, China.
Pest Manag Sci. 2024 Jul;80(7):3650-3664. doi: 10.1002/ps.8069. Epub 2024 Mar 21.
Metaldehyde is a molluscicide commonly used to control Pomacea canaliculate. Its efficacy is significantly impacted by water temperature, although the underlying mechanisms have not been fully explored.
In this study, we systematically investigated the temperature effect and molecular mechanisms of metaldehyde on P. canaliculata. The molluscicidal effect at various temperatures indicated that metaldehyde's molluscicidal activity significantly decreases with a drop in temperature. The LC value was only 458.8176 mg/L at 10 °C, while it surged to a high of 0.8249 mg/L at 25 °C. The impact of low temperature (10 °C) on metaldehyde's molluscicidal activity was analyzed via transcriptomics. The results revealed that the effect of low temperature primarily influences immunity, lipid synthesis, and oxidative stress. The expression of stress and immune-related genes, such as MANF, HSP70, Cldf7, HSP60, and PclaieFc, significantly increased. Furthermore, we studied the function of five target genes using RNA interference (RNAi) and discovered that Cldf7 and HSP70 could notably affect metaldehyde's molluscicidal effect. The mortality of P. canaliculata increased by 36.17% (72 h) after Cldf7 interference and by 48.90% (72 h) after HSP70 interference.
Our findings demonstrate that low temperature can induce the extensive expression of the Cldf7 and HSP70 genes, resulting in a substantial reduction in metaldehyde's molluscicidal activity. © 2024 Society of Chemical Industry.
灭螺剂金属乙醛常用于防治福寿螺。其功效受水温影响显著,但相关的作用机制尚未完全阐明。
本研究系统地调查了金属乙醛在福寿螺体内的温度效应和分子机制。在不同温度下的灭螺效果表明,金属乙醛的灭螺活性随温度降低显著下降。在 10℃时,LC 值仅为 458.8176mg/L,而在 25℃时则飙升至 0.8249mg/L。通过转录组学分析了低温(10℃)对金属乙醛灭螺活性的影响。结果表明,低温的影响主要影响免疫、脂质合成和氧化应激。应激和免疫相关基因如 MANF、HSP70、Cldf7、HSP60 和 PclaieFc 的表达显著增加。此外,我们使用 RNA 干扰(RNAi)研究了五个靶基因的功能,发现 Cldf7 和 HSP70 可显著影响金属乙醛的灭螺效果。在 Cldf7 干扰后,福寿螺的死亡率在 72 小时内增加了 36.17%,在 HSP70 干扰后增加了 48.90%。
本研究结果表明,低温可诱导 Cldf7 和 HSP70 基因的广泛表达,导致金属乙醛的灭螺活性显著降低。 © 2024 化学工业协会。